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用煤挥发分再燃过程中显著因素的识别。

Identification of significant factors in reburning with coal volatiles.

作者信息

Zarnitz Ryan, Pisupati Sarma

机构信息

Energy and Mineral Engineering Department, The Pennsylvania State University, 110 Hosler Building, University Park, Pennsylvania 16802, USA.

出版信息

Environ Sci Technol. 2008 Mar 15;42(6):2004-8. doi: 10.1021/es7021329.

Abstract

In laboratory-scale flow reactor studies, fuel staging using coal volatiles as a reburning fuel has given superior NOx reduction performance compared to reburning using natural gas. This superior performance of coal volatiles may be caused by an increased yield of hydrocarbon radicals and free nitrogen species in the reburning zone. In this study, kinetic models were used to predict the composition of coal volatiles used in reburning. The reburning process was then examined using a set of designed experiments to examine the components of the coal volatiles and their effects on NOx reduction. Within the concentration ranges studied, reburning temperature and air concentration were shown to control NOx reduction, and reburn gas component concentrations had only minor effects.

摘要

在实验室规模的流动反应器研究中,与使用天然气再燃相比,以煤挥发物作为再燃燃料的燃料分级表现出更优异的氮氧化物还原性能。煤挥发物的这种优异性能可能是由于再燃区内烃基和游离氮物种的产率增加所致。在本研究中,使用动力学模型预测再燃中所用煤挥发物的成分。然后通过一组设计实验来研究再燃过程,以考察煤挥发物的成分及其对氮氧化物还原的影响。在所研究的浓度范围内,再燃温度和空气浓度被证明可控制氮氧化物还原,而再燃气体成分浓度的影响较小。

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